Chemoenzymatic synthesis of fluorinated cellodextrins identifies a new allomorph for cellulose‐like materials

  • de Andrade, Peterson
  • Muñoz-García, Juan C.
  • Pergolizzi, Giulia
  • Gabrielli, Valeria
  • Nepogodiev, Sergey
  • Iuga, Dinu
  • Fabian, Laszlo
  • Nigmatullin, Rinat
  • Johns, Marcus A.
  • Harniman, Robert
  • Eichhorn, Stephen J.
  • Angulo Alvarez, Jesus
  • Khimyak, Yaroslav
  • Field, Robert A.
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Publication date
January 2021
Publisher
Wiley
Language
English

Abstract

Understanding the fine details of the self-assembly of building blocks into complex hierarchical structures represents a major challenge en route to the design and preparation of soft-matter materials with specific properties. Enzymatically synthesised cellodextrins are known to have limited water solubility beyond DP9, a point at which they self-assemble into particles resembling the antiparallel cellulose II crystalline packing. We have prepared and characterised a series of site-selectively fluorinated cellodextrins with different degrees of fluorination and substitution patterns by chemoenzymatic synthesis. Bearing in mind the potential disruption of the hydrogen-bond network of cellulose II, we have prepared and characterised a multipl...

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